DocumentCode
172764
Title
Sensing throughput tradeoff for cognitive radio networks with noise variance uncertainty
Author
Bogale, Tadilo Endeshaw ; Vandendorpe, Luc ; Long Bao Le
Author_Institution
Inst. Nat. de la Rech. Sci. (INRS), Univ. du Quebec Montreal, Montreal, QC, Canada
fYear
2014
fDate
2-4 June 2014
Firstpage
435
Lastpage
441
Abstract
This paper proposes novel spectrum sensing algorithm, and examines the sensing throughput tradeoff for cognitive radio (CR) networks under noise variance uncertainty. It is assumed that there are one white sub-band, and one target sub-band which is either white or non-white. Under this assumption, first we propose a novel generalized energy detector (GED) for examining the target sub-band by exploiting the noise information of the white sub-band, then, we study the tradeoff between the sensing time and achievable throughput of the CR network. To study this tradeoff, we consider the sensing time optimization for maximizing the throughput of the CR network while appropriately protecting the primary network. The sensing time is optimized by utilizing the derived detection and false alarm probabilities of the GED. The proposed GED does not suffer from signal to noise ratio (SNR) wall (i.e., robust against noise variance uncertainty) and outperforms the existing signal detectors. Moreover, the relationship between the proposed GED and conventional energy detector (CED) is quantified analytically. We show that the optimal sensing times with perfect and imperfect noise variances are not the same. In particular, when the frame duration is 2s, SNR= -20dB, -20dB and each of the bandwidths of the white and target sub-bands is 6MHz, the optimal sensing times are 28.5ms and 50.6ms with perfect and imperfect noise variances, respectively.
Keywords
cognitive radio; probability; signal detection; CED; CR networks; GED; cognitive radio networks; conventional energy detector; false alarm probabilities; noise variance uncertainty; novel generalized energy detector; novel spectrum sensing algorithm; sensing throughput tradeoff; sensing time optimization; target sub-band; white sub-band; Bismuth; Detectors; Signal to noise ratio; Throughput; Uncertainty; Cognitiveradio; Noise variance uncertainty; SNR wall; Sensing Throughput tradeoff; Spectrum sensing;
fLanguage
English
Publisher
ieee
Conference_Titel
Cognitive Radio Oriented Wireless Networks and Communications (CROWNCOM), 2014 9th International Conference on
Conference_Location
Oulu
Type
conf
Filename
6849725
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